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Structural change of single-walled carbon nanotube induced by soft X-ray irradiation

机译:软X射线辐照引起的单壁碳纳米管结构变化

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Single-walled carbon nanotubes (SWNTs) grown on Si(100) were irradiated with X-ray having the spectrum with a peak at 277 eV. We measured Raman scattering spectra of the samples before and after the irradiation at various fluences and found that the relative intensity of the defect-related band, D band, to the band of the tangential shear modes of the carbon atoms in a graphene sheet, G band, was enhanced by the irradiation. The fluence dependence of this intensity ratio, D/G, took a peak around the fluence of 7 × 10~(13) cm~(-2). Further X-ray irradiation reduced the D/G to around half of the maximum. Detail inspection of the low frequency Raman spectra revealed that the radial breathing modes of the SWNTs were modified by the irradiation. The result suggests that the X-ray irradiation gives rise to not only defect formation but also modification of the SWNT structure.
机译:用具有在277 eV处具有峰值的光谱的X射线照射在Si(100)上生长的单壁碳纳米管(SWNT)。我们测量了辐照前后样品在不同注量下的拉曼散射光谱,发现缺陷相关能带D谱带与石墨烯片中碳原子切向剪切模态谱带的相对强度G辐照增强了条带。该强度比D / G的能量密度依赖性在7×10〜(13)cm〜(-2)的能量密度附近出现一个峰值。进一步的X射线辐射将D / G降低到最大值的一半左右。低频拉曼光谱的详细检查显示,单壁碳纳米管的径向呼吸模式被辐射所改变。结果表明,X射线照射不仅引起缺陷形成,而且引起SWNT结构的改变。

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